60 structural-engineering-"https:"-"https:"-"https:"-"https:" positions at Imperial College London
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Foundation. This project aims to develop a high-performance disposable analytical tool for the on-site detection of folic acid in several food matrices. This technology is based on our recently developed
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Position Summary: Applications are invited for a PhD studentship, to be undertaken at Imperial College London (Control and Power Research Group, Department of Electrical and Electronic Engineering
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to develop a high-performance disposable analytical tool for the on-site detection of folic acid in several food matrices. This technology is based on our recently developed wireless and batteryless, near
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uncertainty in meteorological forecasting, contrail process modelling, and satellite observations to quantify the skill of impact forecasts. PhD (or equivalent) in either aerospace engineering, software
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and optimisation but not limited to data driven monitoring for control and operation. You must have a good master’s degree in electrical engineering, with Power and Control Engineering major
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delivery of high-quality communications, engagement and marketing activities across the Department of Chemical Engineering. This varied role will contribute to the production of digital content, delivery
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within the broad fields of climate change, energy, clean technology and the environment. During the initial three years, the position will be based at the Grantham Institute before formally transferring
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The Department of Bioengineering at Imperial College London is a global leader in education and research at the interface of engineering, medicine, and biology. Our work spans cutting-edge areas
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of maintaining relationships with stakeholders Experience of producing and delivering training Understanding of the structures, issues and trends affecting higher education and the student experience Understanding
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. Of particular concern are Gram-negative bacteria which possess two cell membranes, including a hard-to-penetrate outer membrane decorated with efficient efflux systems. These structural barriers severely limit